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Influence of a weak constant magnetic field on the Hβ line of a t-tube plasma

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Abstract

Measurements of the additional shift of the Hβ spectral line emitted by a plasma in a magnetic field are performed. The magnitudes of the shift are distinguished by good reproducibility. The magnetic field strength was 0.5 and 2.1 T. Comparison is made of the Hβ line profiles recorded in the presence of the magnetic field and without it, all other things being equal. Consideration is given to a number of possible causes of the additional shift (they include the dependence of the shift on the density of electrons, their temperature, and on the velocity of the plasma flux). The additional shift of the Hβ line in the presence of the magnetic field is qualitatively substantiated.

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References

  1. Nguyen-Hoe, H. W. Drawin, and L. Z. Herman, Z. Naturf.,21a, 1515 (1996).

    ADS  Google Scholar 

  2. Nguen-Hoe, H. W. Drawin, and L. Z. Herman, J. Quant. Spectrosc. Radiat. Transfer,7, 429 (1967).

    Article  ADS  Google Scholar 

  3. G. Mathys, Astron. Astrophys.,189, 179 (1988).

    ADS  Google Scholar 

  4. R. C. Ister, Phys. Rev. A,14, 1015 (1976).

    Article  ADS  Google Scholar 

  5. C. Breton, C. De Michelis, M. Finkenthal, and M. J. Mattioli, J. Phys. B,13, 1703 (1980).

    Article  ADS  Google Scholar 

  6. E. K. Souw and J. Uhlenbusch, Physica C,122, 353 (1983).

    Article  Google Scholar 

  7. H. W. Drawin, L. Z. Herman, and Nguen-Hoe, J. Quant. Spectrosc. Radiat. Transfer,9, 317 (1969).

    Article  ADS  Google Scholar 

  8. W. Wien, Ann. der. Phys.,49, 842 (1916).

    Article  ADS  Google Scholar 

  9. E. U. Condon and G. H. Shortly, The Theory of Atomic Spactra, Cambridge University, Cambridge (1963).

    Google Scholar 

  10. F. M. Levinton, G. M. Gammel, R. Kaita, H. W. Kugel, and D. W. Roberts, Rev. Sci. Instrum.,61, 2914 (1990).

    Article  ADS  Google Scholar 

  11. S. H. Patial, J. Phys., A. Math. Geom.,14, 2251 (1981).

    Article  ADS  Google Scholar 

  12. A. C. Kolb, Phys. Rev.,107, 345 (1957).

    Article  ADS  Google Scholar 

  13. H. R. Griem, Spectral Line Broadening by Plasmas, Academic Press, New York (1974).

    Google Scholar 

  14. H. R. Griem, Plasma Spectroscopy, McGraw-Hill, New York (1964).

    Google Scholar 

  15. Z. Mijatović, S. Djurović, M. Pavlov, R. Kobilarov, and B. T. Vujičić, Contrib. Plasma Phys.,35, 453 (1995).

    Article  ADS  Google Scholar 

  16. Z. Mijatović, S. Djurović, M. Pavlov, Contributed Papers of 15th SPIG, Dubrovnic (1990), p. 308.

  17. H. R. Griem, Z. Phys.,137, 280 (1954).

    Article  ADS  Google Scholar 

  18. W. L. Wiese and D. E. Kelleher, Astrophys. J.,166, L59 (1971).

    Article  ADS  Google Scholar 

  19. W. L. Wiese, D. E. Kelleher, D. R. Paquette, Phys. Rev., A,6, 1132 (1972).

    Article  ADS  Google Scholar 

  20. D. E. Kelleher, Konjević, and W. L. Wiese, Phys. Rev.,20, 1195 (1979).

    Article  ADS  Google Scholar 

  21. J. Halenka and J. Musielok, J. Quant. Spectrosc. Radiat. Transfer,36, 233 (1986).

    Article  ADS  Google Scholar 

  22. Z. Mijatović, M. Pavlov, and S. Djurović, Phys. Rev. A,43, 6095 (1991).

    Article  ADS  Google Scholar 

  23. H. R. Griem, Phys. Rev., A,38, 2943 (1988).

    Article  ADS  Google Scholar 

  24. H. R. Griem, Phys. Rev., A,28, 1596 (1983).

    Article  ADS  Google Scholar 

  25. B. S. Milič, Osnovi Fizike Gasne Plasme, Naucna Knjiga, Seograd (1977).

    Google Scholar 

  26. J. Denavit, J. Phys. Fluids,22, 1384 (1979).

    Article  MATH  ADS  Google Scholar 

  27. S. Djurović and M. Pavlov, Beitrage aus der Plasmaphysik,24, 105 (1984).

    Article  Google Scholar 

  28. B. Vujičić, S. Djurović, Z. Mijatović, M. Pavlov, and R. Kobilarov, Zbornik Radova, Sveska za Fiziku PME Novi Sad,24/25, 1 (1995).

    Google Scholar 

  29. S. Djurović, Z. Mijatović, M. Pavlov, R. Kobilarov, and B. Vujičić, Contributed Papers of 16th SPIG, Beograd (1993), p. 193.

  30. Z. Mijatović, M. Pavlov, S. Djurović, B. Vujičić, and R. Kobilarov, J. Quant. Spectrosc. Radiat. Transfer,46, 557 (1991).

    Article  ADS  Google Scholar 

  31. Nguen-Hoe, M. Koenig, D. Berrdjem, M. Coby, and G. Gauland, Phys. Rev., A,33, 1279 (1986).

    Article  ADS  Google Scholar 

  32. G. Jamelet, P. Laegle, P. Lemoire, and A. Carillon, J. Quant. Spectrsoc. Radiat. Transfer,44, 71 (1990).

    Article  ADS  Google Scholar 

  33. C. A. Iglesias, Phys. Rev., A,29, 1366 (1984).

    Article  ADS  Google Scholar 

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Institute of Physics, 4, Obradović St., Novi Sad, 21000, Yugoslavia. Translated from Zhurnal Prikladnoi Spektroskopii, Vol. 64, No. 5, pp. 566–574, September–October, 1997.

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Djurović, S., Mijatović, Z., Pavlov, M. et al. Influence of a weak constant magnetic field on the Hβ line of a t-tube plasma. J Appl Spectrosc 64, 578–586 (1997). https://doi.org/10.1007/BF02675315

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  • DOI: https://doi.org/10.1007/BF02675315

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